CmaCh07G013720 (gene) Cucurbita maxima (Rimu)
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATTCAGAAAAATGGTTTTTTTTTACTAATTTAATATTTATATTAATTATATATATATATAATATTTCCATTAGACTAAGCTAGAAAGAAGGTATGATCGTCGGCATTAGGAAATTGCCTTCAATACTTGGAGCTGCTTCATTGCAAAGCCATCGACGTTTGCGAACGAAATTGAGGATGGGCCAGCATAATGCAGAACATAACGCTTCGAAATCCAATCATCAATCGCGCGTCGATAAGTTTTCAGAAGTTATCCGCGACGACCACACTGGTAATGGAGAATTTCAACTCATTTCCTATTCTACTTATACCTGTTCAGTCATGTTTTGGCCCTGAAGATTTGTCTATGTGATATTCTGCCGTTTGTGGGATGAATAATGTAACTCAGGGACAAGCACATAATTTGAATCGGATTTTTTTCGGTTGCATTTCAGGAATTTTCGTTGATTGGTTTTGGAATTGGATGAAACGATTGATAATATTTGCTTGACTTTAGAACTCCTTTGAATAGCTTAAGCAGTCAATAATGGTTATAGAATTGTTTGACTTTAGAACTCTTCAAACCAAACATCTTTTGGAAGCTCAACCTAAAACAAAGAAACAACATTAATTAATCTTCAACCACCCCCAACTCTTTATGCAAAGTGTCACAGTCGTACACATTTTCAACCGTGGAGTTTCGTGATCTTGACACGCTCACGACTAGCCTAGAGGGGAACCCAAGCCCCGTATACATTTTTCGCTTGCCTTTGTGGCTTTGTTGGATCTTAAGAGAGGTTTGTCTTCACCAATGGAATATAACTTGTGTGGATTTCAATCTTTTGCTACCCCGACTTGCCTTTACACTAGGTCAAATCATTTGGCTCGACGTTGCCTCTACTTGAGGCCAAGGTCTTTCATATGCAACGTCGCATCTCAATTCTCATCTTAGTTCCCGATTGACACTGCCTTCATGTCATGATGCCATCCCAAGTCCAGGATGTCATCGGCCATCATAGCTCACTCGTTCTTCCCATTGAGAACGGGCCCATGTGTCATTCATATTATCAGGGCCTCCCGAACATCCATCCATCTGGACTCTATTGGGGCATTGGACCCTCTCGTGTCTAAGCCATATCATTTACGGACTCTGTACTAGATAGTAAGTGCATATACCAGACTCCAACACGCTTGGGACACATGTCGACACACCTGTGCCGTCCGACACTATCCTTGAAAGACCTATTTCAAAAAAAGTCACCTGAGACACTCGTCTTGCAACGCTTGCCCTCATTGTGATACACGTATGTGTCACAGGGTAGCTCGCTTAGGCCACAATGTCCAGAGGTGGTGGAGAACTGACACCATGCCTCCCTCTAAGGAACATTTTGAGGCATTTCCAATTTGGCAGATATAGACATGATTTTGGCGAACGGTCATACGGTATCGTGGAGCATCCGTCCAGTGTCCAATTGACACCAAATTTGGTGAGCTTTCATATTTCATATGGACGGACTTAACTCCACATCCACATGCCGAAACTCCTTCTGGAACCCCAACTTTCGAGGTTAAGGCCTGGGGTCCTACTCAACCCTTTTTCAAGCCTATCTTTGTCCATCATGCTGACATCATTGCCTTCGTCTTATTTATGCCTCAGCTTGGCTTCAATGCACATCTCTTTGGTGTGTTAGATGATGCACCGTCCTCCTCGGTCGCATCATGGCACTCGTCTGTCTTATTCTTCACATGGCCGGATGGGCGCCACTTCAGGGTCGTTGCTTTGCTTGTCTCGATGTAAGGGTCACAACCTACTATCTTCATAGTATAGTTATGATATTCTCCCACACTTAACTAGTCGTCGTCCTTGATGACTTTCTTGGGGTAGAATCGCTCCATGGATAGTGAGACAAAGCACCTAGTAAAAATTCTGCCATAACCAACTAAACAAAATTAAAAGAATCAACTTGCACCAACGGCACTTTAAGCAAAATACCAATTAAATTTGAAGATACATGCAAGGGATAACCTTTTAATGACTCTTTAACCACCACAAACAGTTCATGCAAAACACCTATTAATATCTCTATGGAGGATAAATTACTTAATTATTAATTTAAAGGCACTTTATAATTTTATAGGGAGTGTAAAGAACCTATTAATATCTCTATTTGGCTCTTGCACTTTTTCTTTACAAGATTGGACTTTTGTTTGGGTGGTTTTGGTTGAAATACGATTATGCCTTGAAGCATTCAAGATTTATTATCCTTGTTTTCAGTGGGACATCCATTCAAAGCAGTTTCGTAAGCTTTGTGGCTGTCCTTCAACTGTTTTCTTTTAGTCTTTATGGTGTGAAAGGAATGGAAGGGTCTTTGGTAATACTCAATCATCTTTTGAAGTCTTCATGGATTTAGTTTATTTAATGCTGTTTATTGGGTGTTTGAGGTTTTCCCCTTAATCATTTCATTTATCAATAAAATTTGGCTCTCTCTCTCTCCATATATACATATATACTGGGTTTACTAGAATATTTGTCAATATTGATATTTTATTGATATATCCATAAATTGAAATCTCGATATCATATTTTCATTCTTGCATCCATTGTGCTCATGCTTTGAAGGTTTACTAATTAGGTGGTTGGGAGACATGCTGGGAGCAAGGGCTGACACCATGGGACCTGGGACAACCAACTCCTGTAATTAGTCATCTCTGTGCAATGGGAGATCTTCCAAATGGTCGTGCCCTTGTGCCTGGATGTGGAAGTGTATGTCATTTGGTTTTTTTATAATTTTATTTCAATTTTTTTTTCTTTTCTTTTCTTCTTCTTCTTTCTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTCTATAACAAACGAAAAGTTTTTGTTGAAATAATGAGACTAATGCTTAAAAGACACAAAACTCCGCAGAAGAATGGAAAGGAACAACTAAGAGGGATTACAAATAAGTGTATAAAAACAATTCAAATAATACTAAATCTTCTTCAACAAAGAGCCTAAAATATTATCCAATCAAAATATTGAAATGAACGCTAAGTCTTTGATATGTGGTATCGATATAGTTGATTAAAAAATACAGCTGATTTTGTCTTGTCTCAATTGCAAGATTGAATCTTTGCCATACTTTGGTCTTCCTCTGGGTGGTCACCCAGAGAACGCTTCATTCTGGCAGCCAATTTTAGAGAAACTTTCAAAGAAGCTTGATCATTGGGGAAGATTCAATATTTCTCAAGGAGGAAGATTAAAATTATGCAAGTCGGATCTTTCTAACCCTCCTTTATACTATATGTCTCTTTTTATGATTCCTCCTGCTGTGGTGTTGCCTAAAGAGACGCAGGAGAGAATTCTCCCAGAATCAATCTCTAAATCTTTATTAGGGATAGAAGTGTACTGAACACATGACCCCTTTGTAAGTCTTAACCTGGTTTATTGTTGGGTCATTAGAAAGTGGAGCAACATTATAGTCTTGCTTAATTTACTCCCCATAATCACAACCCTCCATGTAGGCTTCCATTCTGATAGCCCATGTTTGGTAGTTTTCACCATCAAACTCAGGTAGTCAGTGAAGAAAGAAAGATTGCTTGATTCTGACTCCATCTCACTCAATACTCACAGTGCACCACTCAGTATCTCTTAGGGATATCTTACTTCTCACTCACAGGCCCTTCCAAAATTTAGAGCTCTGATACCACTGAAGTTTGAGAGAGGAGAAATGGGGAAGTCTACGTTTTCATTCAATAACAACTTTAAATACAGACTTTAATGTTAAAAAAAACTTGGCTAACTCTACAAAAGTAGAAACTTACTCTCAAGTCCAAAAAAGTAGCAACTTCAACTGACAACTAAACATATCAACTTCCCTAAAAAGTAGGATCCTCGACTGATTCAAAACCAAAACAAACTTGTAGTTGAGCTAATTAACAAGTAGAAACTGAAACAAGGCATTCAAACGTATTAAGCTTTCTCTTCGAGAGATTAACAGAGGAATATATTTTGGAGAGATTTCATTACATGGAAACTTTAAATTATTTACATTCTATAATTCATTCCTTGTCTCTGAACCTAGACTGAGGATAAGGGCAAGTTTTCCCTTTGCGCTTAGCAATTAGCTAGAATCTTATTATTTCTTTCATAGAAAGCATCAAAGTTTTTAATATGACAGGGCTATGATGTTTTACAAATGGCAAGCTCTGAACGCTATGTTATTGGATTGGACATATCACACAATGCCATACAAAAGGCAAGAGAGGTATAAATATTATATTTCTGCATTTAGCTTCTTTCCAGAGCCAACATAATGGAAAAACAAAGGGAAATTTAGGACTTTTGGGGATTTTTGTACGAAAACTATTTGTGAATGTAGTTTTGGAACCTTAACTGATATTTCTTCTTATTTGTTCTCTTAATTATTCGAGGTTTATTTTATTCTAACTTTATTATACTTAAATGTTAGCTATAGTATATTTGTCTAGTTAGCATTTCCCTGGTAGCTTCTGCTACCTTATTTGTTTTCAATCTTTTCCCCGAGTCTCCTGTATTCATAATTGCATCTCTAAATTGAAGAACATAGGCTGGGTTTAGTGGGAATTTTTCGTTCATGATTATTCTCCAATTGTTATATTGGATTTTCTCGGGTTTCGCTACACTATAATTGGTTACAATTTCTCTAATATTCCAACATTGATATCAGATCCAAGTTGAAAGGGGATTTAGTTTTGAATATGATTTATTCTTTAAAATTAAACTTCGAATGCTTAGAATTATTTAATGAAATCCTTTGTATATCCTTCGTAAAGCTATGAAACTTTGCTTGTACTTTAGGTATAATATGAATGAAGTCTCTGCAAAATTTCGTGCAAATTGGTCAAGTATATTGAGTTAGTTTCCTGGAACGTGAACCATTGTGCTACAATTTTTTTTTACTTGCAAATTACTTTTCATTAACTTGCCTCTTGCTTATGAAGCTTACGTGTAAAGCATGTTTGAAAACTTTTTCAACAATATATCATATGCTTAATTTGGTTTTGGAATGGAAAAGGTTATGGCGGTTTGAAATTGTGGCATAAGCTATTGAAATTGAGTATAATTTTCACTCCCACCAGCACATTATGGACTTTCATTATGGCGTATAAAACACAACTTCTCATCTTTATTGGGGTTTATCATATTTCTCAAAACAAGGAGTACATTCCCGTTTAATTGTATCAGATTTCATGTAAGAAAATAGGCCGCCTGGTTGTCATACTTTAATCTCGTGAGCTTACCACTTTACAATGGTTAAGTACTTAGGCTACCTTAAAATTGAGTTTAGGGTTGGCTTGAGTGTCCAAGAGTCATTTAATCACATGTATCGTAACTTACGACCTTGTTTGTTTTTTTTAGAGTAGACCCAAATGAAAAAGAAAAGAAAGAATACAAGGGGATATAAAAAAAATGAACCCACAAAAGGAAGTTCCATTAATGGAAGGGACTTCAATCAAGTAAGACAAGACCTAAAGAGTTATTACAAAAAAGATTGACGCCCAAGGGGAAACATTAAACCTTGTTAGACACCATACCTCTGAAGTGTCCCTTTCAACTCCCTGAAAAATTATATTGTTTCTCTCACTCCAAAGTTCCCACCGTAAGTACACACTCCAGCTTGCCACAAAAACCTTTCTTTCTCACGAAGAGGCAGATAAAGGAGTATGAAAAGGCGGATCGAGTAACTCCTATAGGCTCAAATGTGATGAATCCCTATAGTCGATATCCCACATGTGTCTCCACCTTGACCACTACGTCAGACTCCACCTTAAAAGAAAATTGAAGTAGTAAGGTTGAGTATAAAAATACTCAGTAAGTAGCTTGCTATTAGTTCATTATTCATGTTTAAGTCTTAAGAAATTTATTTCCTTCGTCCGGTGTCTTATTTTGTCTTCGGAGTTTGTTCCTAATAGTAAGTTCTTCCTACTTCATAGTTCTTGATCCAATTTAGACCTCCAACCCTCAAATTTCTCTTGAGCTCTCTAGGTCTTTTGAATTATCATTCTGCTACTCTCTATCATCATCATATGTATCGTAGAACCTCGAGGTGCAAACTCAATTATAAGTTTTCATAAGGTTTATGTCTTCTAAAGTTTAGCCAACTCTTAAGGTACTACTACTAAGAACCTCTACCGCTTGTGATAGGTTCACTAAAAGGAAATTAATTGGCAAACTTTTTAATAATTCCCACAGAGTACCGTCATAAATCATAAGTAAGTTCAATAGTTATCCAGATCCCTAACAATTGAGTCAGGTTTACGACTATGGCCTAGTTGGCGAACCCTCAACCGTCCCCCATATAATTGTATAAACATCTCATGTATGAATAATGTTCAACCAGCTCTCAAGGTACCACTGCGGACTTCTGCCGCTCATGACAGGTTCATTAAGATGAAATTAACTGGCAAACTCCTTAATAATCCCCACAGAGTACAGTCATAAATCATAAGTCAGTTCTATAGTTATCTAGACCCTTGACAATTGAGTCAGGTTTACGATTAGGGGCTAGTTAATGAACCCCTAATCATCCCCATATAACCGCATAAAAATCATGTATGTGAATAAATCATGAACAGAGGTATAGCATAGCGACCTAAACATGGATTCCTGGTTATGTTTACATTTACATTCAATTTTAGAGTTCAATTCATTCCTTTTTTGGGAAACATGCATCATAGCAGTTCAACAAGTTTTTCATAGATCAAATCAACTCAGTTCAAGCTCAACATCTAAATTTAGATGTTGCTCTTATGTTTGGGACAAAAGGGTCACTTAGGAGAAGCAAAATGTAATGAATTGTAGCAAGAATGTTTTGTGATAGTCAAGCAACAATCAACATAATAAAGAATCTTCTACATCATGATAGAACGAAGCGCATAAAGATAGAACGTCATTTCATATCTAAGAAGGCTCAATTGCATAGTGGTACTAAACTATGTTCCATTTAGCATCAAAGTGCTGACGTTCTTGAAGAATTCAACTCCAAGCATGCTTTGTATTCCTACCACATATCCGTTCAGGAGGCTTTTCAAGTATGCTATATATGCGGGATATATAACAAATTTCAAAAGTTTAATCGAATGGGTATATATAATCAAGATGTGGTGATAGTTTTTTCACTTTTCTTAGATCTTTGGGTAATTCATTTCGTCCATGTGAAAAATGATGTTATAAGAATACTGAGTGTGCATCAAATATTTCCTTTCATGAATGGTTATCAAATAATGGAGATTACACACTTGCATTCTGCTTATATTATCTGAAATGAGGTGTTCCCTCTAGACTCGCTGTTACACTTGAAAGTAATCTCATTTCTACTTTTTTTCTTTTTCTTTTTCTTTTTTTTTCCCCTAACAAACTGCAGCTATCTTCCTCATCGCCAAAGATTGGATACTTTAGCTTCTTAAAGGAAGATTTTTTCAGTTGGAGACCCAAGGAATTGTTTGATCTCATTTTTGATTATACGTAAGTTAGAGTTGATGACAAGCTTATTTTCTCTTGGAAGAATCCTACATGATGATTATTGGAAGCTGTGCAGGTTTTTTTCTGCTATTGAACCTGCCATGAGAGTAGCTTGGGGACAACAGATGCAGATGCTATTAAAACCAAATGGAGAGCTTATAACACTAATGTTTCCAGTAATCATCTTTACTTAAACACAAATATTCTCTTACATTCTTTCCTTTTATGTTTTATGGATTATTTTTACAAGCCTAGAACGCAAAATTCCACCTCATATTTCACTGGAAGTTTCCCTTCTTAAGTTGAATTTTCTGTGACAATAATTTTCTTTTAAAAAATTTGTAAAAATGTTACGACACATTTTCTCGTCATTAAGTAAACAGTCATTTGTTTGATTTTATTTTGTATATCTGTTCATGATTCTTTCCTTTATTTCATGTTTTAAATACAATTTTTTGGCTGGCAGATTGATGACCATATTGGTGGACCACCTTACAAAGTTTCAGTTTCAGAGTAATTCTCAACCTTCACTTGGAATTTTTTTCCTACTTGTTTAATTGTTCCTTTCAGTTCAAATATTTATCCAGATCACCGTGTTTTCCTTTTTTCCATTTAGAAACTTACTCCTTTGTCTTTGAAAAAGAATTCATGGTTATAAATACTAGAGATTAGATTCCTTATCTTTCCTTGTTTTGTACCTATTTTTTAACCATTATTAAAATGAAGATGAGTTAGTTGTAGGTGGCCGATGGAAGCATCCTTATCCATGGGGATGATACTGAAGATGAGAAATATTTTCTGTGAAAGGTCCTAAGTGGGTTTGCGGTGAGAGATCAATTGGTGGAAACGATTGTTTTTTCTTATCCTGCTTTCTGCTTCTTTTAGAGCCCGATGGGGGATAAGTTTAAAGCCAAGTTTGACAAATAGAGGAACCTCCTTTTCTCATAAGCGGTACATTGGCTTTGGGTCAGTCTATCCCAACAGTATGCTCGTTTACCGTTTCTCCCTTCTTAGGGCACCAATTAAAGTTGTTTACTCAATGGAGATACTTGAGAGATTTCATTGGGAACGGAGAGGGTTTTATTGTCTCGTTAGCCATTTGGTAAATTGGAGTTGTACCCCTCTCTCCATTCAGTAGGACTGCAGTCTTGGGGTTGGTTCTAATTCAAACAGAGGAATAATTCCTTCCTTATGGTCTGGAGCTACTTGGTGGTGTGACCAAAGCCATAGAAGGCAGGATGGGGAAAGGTCGTGGTCGAACATTGCTAAGATATCCAACATTTTCTTCAAAATATTGAATTTTAATGTTATGAATGGTCAAAGGATACACTACTAGGAGGACATTTCAACCCTTTCATTACGATTGTTTTATGAAATTTATAAGCTTTCCTCGAGGAAGGGTGCCTCCATTTCAAATTGCTGGGATGAAGAACATCATGATTGGGATTTAGGGGGGAATTGAGGCTTGTTGAAATAAACAAAATACTTTAATGAAATAGAATTCAATACTAAACCAAAGATAGACGAGTATGGTCGTCAATAATGGTAACAAACCAAAGACTAAATAGTTTTCAAATGGAACCTTAGTTGTAGAGAAATCAAATGTCGTTTAGGGATTTGTTAGGAACTTGTTGATTAAGTTTTGTTGCATCTTCTTGGCATTTCCTAAATATCTACTCTTCGTCGTTCAATGCAACTTGAAGTGCCTTGTATGTCTGTGTGGCTCTTCCATAAACCTGGCTCATAATTACATGGTCTATTGAATATTGATAGTTACGAGGACGTACTACTTCCATTGGGCTTCAAGGCTGTACTTATCAAGGACAATGAACATGCCATCCCACCTCGCAAGGTAAAAAAAAGGTTTTATTTGGCATCTCAACTTTAAAAATTGTCTAATTAATATACAAATATTACATCTAGGAAGGAAGTCAGGTGCACAATGAGCTCTATTTGAGATTATTTGAGTGTTATGGCTAAACTTGGGAATATGCAACATTATCCATGGCTGAATGTTGAGTGTATGATTAAGGGAAATTTCATGACAGGGACGAGAGATGATCGGAAGGTGGAAGAGGAGTTTGGCCCACGCTTCACTCTAAATTGAAAGACAATTGCAAAATTTTATGTTCAACTGTGGTAAGTAGCTAAATATGCCAAGCGGCCCCTGGTCTTTAAGTTTGTTTTCAAGTAGTCTTGAAGGACCCTTAAAGATACAAATTTAGTGACTATACGTATAATTTGATGTAATATTTAATTCAACATTTAGATTAAAAATTATTAGTAAATAATGATAAATTTTGAAATATTTTCCAAACATCTCTAGTATTTTTATG ATTCAGAAAAATGGTTTTTTTTTACTAATTTAATATTTATATTAATTATATATATATATAATATTTCCATTAGACTAAGCTAGAAAGAAGGTATGATCGTCGGCATTAGGAAATTGCCTTCAATACTTGGAGCTGCTTCATTGCAAAGCCATCGACGTTTGCGAACGAAATTGAGGATGGGCCAGCATAATGCAGAACATAACGCTTCGAAATCCAATCATCAATCGCGCGTCGATAAGTTTTCAGAAGTTATCCGCGACGACCACACTGGTGGTTGGGAGACATGCTGGGAGCAAGGGCTGACACCATGGGACCTGGGACAACCAACTCCTGTAATTAGTCATCTCTGTGCAATGGGAGATCTTCCAAATGGTCGTGCCCTTGTGCCTGGATGTGGAAGTGGCTATGATGTTTTACAAATGGCAAGCTCTGAACGCTATGTTATTGGATTGGACATATCACACAATGCCATACAAAAGGCAAGAGAGCTATCTTCCTCATCGCCAAAGATTGGATACTTTAGCTTCTTAAAGGAAGATTTTTTCAGTTGGAGACCCAAGGAATTGTTTGATCTCATTTTTGATTATACGTTTTTTTCTGCTATTGAACCTGCCATGAGAGTAGCTTGGGGACAACAGATGCAGATGCTATTAAAACCAAATGGAGAGCTTATAACACTAATGTTTCCAATTGATGACCATATTGGTGGACCACCTTACAAAGTTTCAGTTTCAGATTACGAGGACGTACTACTTCCATTGGGCTTCAAGGCTGTACTTATCAAGGACAATGAACATGCCATCCCACCTCGCAAGGGACGAGAGATGATCGGAAGGTGGAAGAGGAGTTTGGCCCACGCTTCACTCTAAATTGAAAGACAATTGCAAAATTTTATGTTCAACTGTGGTAAGTAGCTAAATATGCCAAGCGGCCCCTGGTCTTTAAGTTTGTTTTCAAGTAGTCTTGAAGGACCCTTAAAGATACAAATTTAGTGACTATACGTATAATTTGATGTAATATTTAATTCAACATTTAGATTAAAAATTATTAGTAAATAATGATAAATTTTGAAATATTTTCCAAACATCTCTAGTATTTTTATG ATGATCGTCGGCATTAGGAAATTGCCTTCAATACTTGGAGCTGCTTCATTGCAAAGCCATCGACGTTTGCGAACGAAATTGAGGATGGGCCAGCATAATGCAGAACATAACGCTTCGAAATCCAATCATCAATCGCGCGTCGATAAGTTTTCAGAAGTTATCCGCGACGACCACACTGGTGGTTGGGAGACATGCTGGGAGCAAGGGCTGACACCATGGGACCTGGGACAACCAACTCCTGTAATTAGTCATCTCTGTGCAATGGGAGATCTTCCAAATGGTCGTGCCCTTGTGCCTGGATGTGGAAGTGGCTATGATGTTTTACAAATGGCAAGCTCTGAACGCTATGTTATTGGATTGGACATATCACACAATGCCATACAAAAGGCAAGAGAGCTATCTTCCTCATCGCCAAAGATTGGATACTTTAGCTTCTTAAAGGAAGATTTTTTCAGTTGGAGACCCAAGGAATTGTTTGATCTCATTTTTGATTATACGTTTTTTTCTGCTATTGAACCTGCCATGAGAGTAGCTTGGGGACAACAGATGCAGATGCTATTAAAACCAAATGGAGAGCTTATAACACTAATGTTTCCAATTGATGACCATATTGGTGGACCACCTTACAAAGTTTCAGTTTCAGATTACGAGGACGTACTACTTCCATTGGGCTTCAAGGCTGTACTTATCAAGGACAATGAACATGCCATCCCACCTCGCAAGGGACGAGAGATGATCGGAAGGTGGAAGAGGAGTTTGGCCCACGCTTCACTCTAA MIVGIRKLPSILGAASLQSHRRLRTKLRMGQHNAEHNASKSNHQSRVDKFSEVIRDDHTGGWETCWEQGLTPWDLGQPTPVISHLCAMGDLPNGRALVPGCGSGYDVLQMASSERYVIGLDISHNAIQKARELSSSSPKIGYFSFLKEDFFSWRPKELFDLIFDYTFFSAIEPAMRVAWGQQMQMLLKPNGELITLMFPIDDHIGGPPYKVSVSDYEDVLLPLGFKAVLIKDNEHAIPPRKGREMIGRWKRSLAHASL
BLAST of CmaCh07G013720 vs. Swiss-Prot
Match: HOL3_ARATH (Probable thiol methyltransferase 2 OS=Arabidopsis thaliana GN=HOL3 PE=1 SV=1) HSP 1 Score: 290.0 bits (741), Expect = 2.5e-77 Identity = 134/217 (61.75%), Postives = 166/217 (76.50%), Query Frame = 1
BLAST of CmaCh07G013720 vs. Swiss-Prot
Match: TMT1_BRAOL (Thiocyanate methyltransferase 1 OS=Brassica oleracea GN=TMT1 PE=1 SV=1) HSP 1 Score: 281.2 bits (718), Expect = 1.2e-74 Identity = 126/192 (65.62%), Postives = 153/192 (79.69%), Query Frame = 1
BLAST of CmaCh07G013720 vs. Swiss-Prot
Match: HOL2_ARATH (Probable thiol methyltransferase 1 OS=Arabidopsis thaliana GN=HOL2 PE=1 SV=1) HSP 1 Score: 274.6 bits (701), Expect = 1.1e-72 Identity = 123/192 (64.06%), Postives = 149/192 (77.60%), Query Frame = 1
BLAST of CmaCh07G013720 vs. Swiss-Prot
Match: TMT2_BRAOL (Probable thiocyanate methyltransferase 2 OS=Brassica oleracea GN=TMT2 PE=2 SV=1) HSP 1 Score: 274.2 bits (700), Expect = 1.4e-72 Identity = 130/221 (58.82%), Postives = 159/221 (71.95%), Query Frame = 1
BLAST of CmaCh07G013720 vs. Swiss-Prot
Match: HOL1_ARATH (Thiocyanate methyltransferase 1 OS=Arabidopsis thaliana GN=HOL1 PE=1 SV=1) HSP 1 Score: 266.2 bits (679), Expect = 3.8e-70 Identity = 126/211 (59.72%), Postives = 155/211 (73.46%), Query Frame = 1
BLAST of CmaCh07G013720 vs. TrEMBL
Match: A0A0A0KYY5_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_4G439050 PE=4 SV=1) HSP 1 Score: 412.9 bits (1060), Expect = 2.8e-112 Identity = 201/259 (77.61%), Postives = 220/259 (84.94%), Query Frame = 1
BLAST of CmaCh07G013720 vs. TrEMBL
Match: A0A067ECJ3_CITSI (Uncharacterized protein OS=Citrus sinensis GN=CISIN_1g024021mg PE=4 SV=1) HSP 1 Score: 314.7 bits (805), Expect = 1.0e-82 Identity = 149/235 (63.40%), Postives = 182/235 (77.45%), Query Frame = 1
BLAST of CmaCh07G013720 vs. TrEMBL
Match: M5VRQ1_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa010661mg PE=4 SV=1) HSP 1 Score: 313.9 bits (803), Expect = 1.8e-82 Identity = 149/227 (65.64%), Postives = 180/227 (79.30%), Query Frame = 1
BLAST of CmaCh07G013720 vs. TrEMBL
Match: B9IJ56_POPTR (Uncharacterized protein OS=Populus trichocarpa GN=POPTR_0017s03980g PE=4 SV=2) HSP 1 Score: 310.8 bits (795), Expect = 1.5e-81 Identity = 144/225 (64.00%), Postives = 170/225 (75.56%), Query Frame = 1
BLAST of CmaCh07G013720 vs. TrEMBL
Match: A0A067K092_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_19270 PE=4 SV=1) HSP 1 Score: 310.1 bits (793), Expect = 2.6e-81 Identity = 147/222 (66.22%), Postives = 169/222 (76.13%), Query Frame = 1
BLAST of CmaCh07G013720 vs. TAIR10
Match: AT2G43940.1 (AT2G43940.1 S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 290.0 bits (741), Expect = 1.4e-78 Identity = 134/217 (61.75%), Postives = 166/217 (76.50%), Query Frame = 1
BLAST of CmaCh07G013720 vs. TAIR10
Match: AT2G43920.1 (AT2G43920.1 S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 274.6 bits (701), Expect = 6.1e-74 Identity = 123/192 (64.06%), Postives = 149/192 (77.60%), Query Frame = 1
BLAST of CmaCh07G013720 vs. TAIR10
Match: AT2G43910.2 (AT2G43910.2 HARMLESS TO OZONE LAYER 1) HSP 1 Score: 266.2 bits (679), Expect = 2.2e-71 Identity = 126/211 (59.72%), Postives = 155/211 (73.46%), Query Frame = 1
BLAST of CmaCh07G013720 vs. NCBI nr
Match: gi|449453195|ref|XP_004144344.1| (PREDICTED: probable thiol methyltransferase 2 [Cucumis sativus]) HSP 1 Score: 412.9 bits (1060), Expect = 4.1e-112 Identity = 201/259 (77.61%), Postives = 220/259 (84.94%), Query Frame = 1
BLAST of CmaCh07G013720 vs. NCBI nr
Match: gi|659069382|ref|XP_008449545.1| (PREDICTED: probable thiol methyltransferase 2 isoform X1 [Cucumis melo]) HSP 1 Score: 407.1 bits (1045), Expect = 2.2e-110 Identity = 200/260 (76.92%), Postives = 220/260 (84.62%), Query Frame = 1
BLAST of CmaCh07G013720 vs. NCBI nr
Match: gi|659069384|ref|XP_008449554.1| (PREDICTED: probable thiol methyltransferase 2 isoform X2 [Cucumis melo]) HSP 1 Score: 378.6 bits (971), Expect = 8.5e-102 Identity = 186/243 (76.54%), Postives = 205/243 (84.36%), Query Frame = 1
BLAST of CmaCh07G013720 vs. NCBI nr
Match: gi|659069392|ref|XP_008449585.1| (PREDICTED: probable thiol methyltransferase 2 isoform X5 [Cucumis melo]) HSP 1 Score: 331.6 bits (849), Expect = 1.2e-87 Identity = 162/219 (73.97%), Postives = 182/219 (83.11%), Query Frame = 1
BLAST of CmaCh07G013720 vs. NCBI nr
Match: gi|694432672|ref|XP_009343676.1| (PREDICTED: probable thiol methyltransferase 2 isoform X1 [Pyrus x bretschneideri]) HSP 1 Score: 319.7 bits (818), Expect = 4.7e-84 Identity = 148/212 (69.81%), Postives = 170/212 (80.19%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of Cucurbita maxima
Date Performed: 2017-05-20
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
|